Supercritical and Other High-pressure Solvent Systems: For Extraction, Reaction and Material Processing
Exploring the range and utility of high-pressure solvent systems across a variety of different chemical applications, this book brings together recent advances in supercritical technology and other pressurised-solvent systems. It provides an in-depth overview of the latest advances and developments and discusses the limitations and drawbacks that need to be addressed. Wherever possible, the greenness and economic viability of the different solvent systems is highlighted. This book is ideal for researchers and industrialists working in environmental science, green chemistry and biorefineries.
Supercritical and Other High-pressure Solvent Systems: For Extraction, Reaction and Material Processing, The Royal Society of Chemistry, 2018.
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CHAPTER 1: Introduction to High-pressure Solvent Systemsp1-13ByThomas M. Attard;Thomas M. AttardGreen Chemistry Centre of Excellence, Department of Chemistry, The University of YorkHeslingtonYork YO10 5DDUK[email protected]Search for other works by this author on:Andrew J. HuntAndrew J. HuntMaterials Chemistry Research Center, Department of Chemistry, Faculty of Science, Khon Kaen UniversityKhon Kaen40002Thailand[email protected]Search for other works by this author on:
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CHAPTER 2: Understanding Entrainer Effects in Supercritical CO2p14-39BySteven Abbott;Steven AbbottSchool of Mechanical Engineering, University of LeedsLeeds LS2 9JTUKSearch for other works by this author on:Seishi ShimizuSeishi ShimizuYork Structural Biology Laboratory, Department of Chemistry, University of YorkHeslingtonYork YO10 5DDUKSearch for other works by this author on:
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CHAPTER 3: Supercritical Carbon Dioxide Extraction of Lipophilic Moleculesp40-76ByThomas M. Attard;Thomas M. AttardGreen Chemistry Centre of Excellence, Department of Chemistry, The University of YorkHeslingtonYork YO10 5DDUK[email protected]Search for other works by this author on:Andrew J. HuntAndrew J. HuntMaterials Chemistry Research Center, Department of Chemistry, Faculty of Science, Khon Kaen UniversityKhon Kaen40002Thailand[email protected]Search for other works by this author on:
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CHAPTER 4: Subcritical Water: Current Status, Advances, and Applications for Extractions, Reactions and Separationsp77-105ByMoyses Naves Moraes;Moyses Naves MoraesCentro de Ciências da Natureza (CCN), Federal University of São Carlos, UFSCarRua Serafim Libaneo, 04 – Centro CEP: 18245-970 – Caixa Postal: 64Campina do Monte AlegreSPBrazil[email protected]Search for other works by this author on:Giovani Leone Zabot;Giovani Leone ZabotLaboratory of Agroindustrial Processes Engineering (LAPE), Federal University of Santa Maria, UFSMPresidente Vargas Av., 1958Cachoeira do SulRS96506-302BrazilSearch for other works by this author on:Renata Vardanega;Renata VardanegaLASEFI, School of Food Engineering (FEA), University of Campinas, UNICAMPRua Monteiro Lobato, 80CampinasSP13083-862BrazilSearch for other works by this author on:Maria Angela de Almeida MeirelesMaria Angela de Almeida MeirelesLASEFI, School of Food Engineering (FEA), University of Campinas, UNICAMPRua Monteiro Lobato, 80CampinasSP13083-862BrazilSearch for other works by this author on:
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CHAPTER 5: Supercritical Fluid Chromatography (SFC)p106-131ByCon. R. McElroy;Con. R. McElroyGreen Chemistry Centre of Excellence, Department of Chemistry, The University of YorkHeslingtonYork YO10 5DDUK[email protected]Search for other works by this author on:Thomas M. AttardThomas M. AttardGreen Chemistry Centre of Excellence, Department of Chemistry, The University of YorkHeslingtonYork YO10 5DDUK[email protected]Search for other works by this author on:
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CHAPTER 6: Heterogeneous Catalysis in Supercritical Carbon Dioxidep132-190ByM. Chatterjee;M. ChatterjeeMicroflow Chemistry Group, Research Institute for Chemical Process Technology, AIST Tohoku4-2-1 Nigatake, Miyagino-kuSendai983-8551Japan[email protected]Search for other works by this author on:H. KawanamiH. KawanamiMicroflow Chemistry Group, Research Institute for Chemical Process Technology, AIST Tohoku4-2-1 Nigatake, Miyagino-kuSendai983-8551Japan[email protected]CREST Japan Science and Technology (JST)4-1-8 HonchoKawaguchi332-0012SaitamaJapanSearch for other works by this author on:
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CHAPTER 7: Biocatalysis in Supercritical and Liquid Carbon Dioxide and Carbon Dioxide-expanded Liquidsp191-220ByTomoko MatsudaTomoko MatsudaSearch for other works by this author on:
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CHAPTER 8: Selective Hydrogenation in Carbon Dioxide-dissolved Expanded Liquid Phasesp221-261ByHaiyang Cheng;Haiyang ChengState Key Laboratory of Electroanalytical Chemistry, Changchun Institute of Applied Chemistry, Chinese Academy of SciencesChangchun130022P. R. China[email protected]Search for other works by this author on:Xiangchun Meng;Xiangchun MengSchool of Chemical Engineering, Changchun University of TechnologyChangchun130012P. R. ChinaSearch for other works by this author on:Fengyu Zhao;Fengyu ZhaoState Key Laboratory of Electroanalytical Chemistry, Changchun Institute of Applied Chemistry, Chinese Academy of SciencesChangchun130022P. R. China[email protected]Search for other works by this author on:Masahiko AraiMasahiko AraiState Key Laboratory of Electroanalytical Chemistry, Changchun Institute of Applied Chemistry, Chinese Academy of SciencesChangchun130022P. R. China[email protected]Division of Applied Chemistry, Faculty of Engineering, Hokkaido UniversitySapporo060-8628Japan[email protected]Search for other works by this author on:
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CHAPTER 9: Electrochemistry in Supercritical Fluidsp262-303ByDavid Smith;David SmithPhysics and Astronomy, University of SouthamptonSouthamptonSO17 1BJUKSearch for other works by this author on:Mehrdad AlibouriMehrdad AlibouriPhysics and Astronomy, University of SouthamptonSouthamptonSO17 1BJUKSearch for other works by this author on:
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CHAPTER 10: Materials Processing and Recycling with Near- and Supercritical CO2-based Solventsp304-339BySamuel MarreSamuel MarreSearch for other works by this author on:
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CHAPTER 11: Solubility and Synthesis of Polymers Using Supercritical Carbon Dioxidep340-373ByThomas M. Attard;Thomas M. AttardGreen Chemistry Centre of Excellence, Department of Chemistry, The University of YorkHeslingtonYorkYO10 5DDUK[email protected]Search for other works by this author on:Andrew J. HuntAndrew J. HuntMaterials Chemistry Research Center, Department of Chemistry, Faculty of Science, Khon Kaen UniversityKhon Kaen40002Thailand[email protected]Search for other works by this author on:
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CHAPTER 12: Incorporation of Drugs and Metals into Aerogels Using Supercritical Fluidsp374-394ByŽeljko Knez;Željko KnezFaculty of Chemistry and Chemical Engineering, University of MariborSmetanova 172000 MariborSlovenia[email protected]Faculty of Medicine, University of MariborTaborska ulica 82000 MariborSloveniaSearch for other works by this author on:Zoran Novak;Zoran NovakFaculty of Chemistry and Chemical Engineering, University of MariborSmetanova 172000 MariborSlovenia[email protected]Search for other works by this author on:Milica PantićMilica PantićFaculty of Chemistry and Chemical Engineering, University of MariborSmetanova 172000 MariborSlovenia[email protected]Search for other works by this author on:
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CHAPTER 13: Mathematical Modelling and Computation for Rapid Expansion of Supercritical Solutionsp395-415ByT. FurusawaT. FurusawaSearch for other works by this author on:
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CHAPTER 14: The Engineering of Continuous Hydrothermal/Solvothermal Synthesis of Nanomaterialsp416-448ByEd Lester;Ed LesterThe Advanced Materials Research Group, Faculty of Engineering, The University of NottinghamEngland[email protected]Search for other works by this author on:Peter Dunne;Peter DunneSchool of Chemistry, Trinity College DublinCollege GreenDublin 2IrelandSearch for other works by this author on:Yipei Chen;Yipei ChenThe Advanced Materials Research Group, Faculty of Engineering, The University of NottinghamEngland[email protected]Search for other works by this author on:Ammar Al-AttaAmmar Al-AttaThe Advanced Materials Research Group, Faculty of Engineering, The University of NottinghamEngland[email protected]Search for other works by this author on:
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CHAPTER 15: The Chemistry of Continuous Hydrothermal/Solvothermal Synthesis of Nanomaterialsp449-475ByEd Lester;Ed LesterThe Advanced Materials Research Group, Faculty of Engineering, The University of NottinghamUKSearch for other works by this author on:Chris Starkey;Chris StarkeyThe Advanced Materials Research Group, Faculty of Engineering, The University of NottinghamUKSearch for other works by this author on:Ian Clark;Ian ClarkThe Advanced Materials Research Group, Faculty of Engineering, The University of NottinghamUKSearch for other works by this author on:Yipei Chen;Yipei ChenThe Advanced Materials Research Group, Faculty of Engineering, The University of NottinghamUKSearch for other works by this author on:Alexis S. MunnAlexis S. MunnThe Advanced Materials Research Group, Faculty of Engineering, The University of NottinghamUKSearch for other works by this author on:
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CHAPTER 16: Supercritical Water Oxidation: The Next Generation for Abatement of Unrecyclable Waste of Hazardous Nature and Complex Compositionp476-511ByB. Al-Duri;B. Al-DuriSchool of Chemical Engineering, University of BirminghamEdgbastonBirminghamB15 2TTUK[email protected]Search for other works by this author on:I. N. KingsI. N. KingsSchool of Chemical Engineering, University of BirminghamEdgbastonBirminghamB15 2TTUK[email protected]Search for other works by this author on:
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CHAPTER 17: Gas Expanded-liquidsp512-531ByAndrea del Pilar Sánchez-Camargo;Andrea del Pilar Sánchez-CamargoUniversidad Nacional de Colombia, Department of Chemistry, Faculty of ScienceCarrera 30 # 45-03111321Bogotá D. C.ColombiaSearch for other works by this author on:Jose A. Mendiola;Jose A. MendiolaInstitute of Food Science Research, CIAL (CSIC-UAM), Foodomics LaboratoryNicolás Cabrera, 9, Campus de Cantoblanco28049MadridSpain[email protected]Search for other works by this author on:Elena IbáñezElena IbáñezInstitute of Food Science Research, CIAL (CSIC-UAM), Foodomics LaboratoryNicolás Cabrera, 9, Campus de Cantoblanco28049MadridSpain[email protected]Search for other works by this author on:
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CHAPTER 18: Use of Water and Supercritical Carbon Dioxide in Novel Methodologies for Biomass Processingp532-559ByDouglas H. Fockink;Douglas H. FockinkUnidade de Bioenergia, Laboratório Nacional de Energia e GeologiaI.P., Estrada do Paço do Lumiar 221649-038LisbonPortugal[email protected]Research Center in Applied Chemistry (CEPESQ), Department of Chemistry, Federal University of Paraná – UFPRP. O. Box 1908CuritibaPR81531-980BrazilSearch for other works by this author on:Ana Rita C. Morais;Ana Rita C. MoraisUnidade de Bioenergia, Laboratório Nacional de Energia e GeologiaI.P., Estrada do Paço do Lumiar 221649-038LisbonPortugal[email protected]LAQV-REQUIMTE, Department of Chemistry, Faculty of Science and Technology, Universidade NOVA de LisboaLisbonPortugalSearch for other works by this author on:Luiz P. Ramos;Luiz P. RamosResearch Center in Applied Chemistry (CEPESQ), Department of Chemistry, Federal University of Paraná – UFPRP. O. Box 1908CuritibaPR81531-980BrazilSearch for other works by this author on:Rafał M. ŁukasikRafał M. ŁukasikUnidade de Bioenergia, Laboratório Nacional de Energia e GeologiaI.P., Estrada do Paço do Lumiar 221649-038LisbonPortugal[email protected]Search for other works by this author on:
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CHAPTER 19: Hydrothermal Events Occurring During Gasification in Supercritical Waterp560-587BySonil Nanda;Sonil NandaDepartment of Chemical and Biochemical Engineering, University of Western OntarioLondonOntarioCanadaSearch for other works by this author on:Sivamohan N. Reddy;Sivamohan N. ReddyDepartment of Chemical Engineering, Indian Institute of Technology RoorkeeUttarakhandIndiaSearch for other works by this author on:Zhen Fang;Zhen FangCollege of Engineering, Nanjing Agricultural UniversityNanjingJiangsuChinaSearch for other works by this author on:Ajay K. Dalai;Ajay K. DalaiDepartment of Chemical and Biological Engineering, University of SaskatchewanSaskatoonSaskatchewanCanadaSearch for other works by this author on:Janusz A. KozinskiJanusz A. KozinskiSearch for other works by this author on:
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CHAPTER 20: Sub- and Supercritical Water Hydrolysis Applied to Agri-food Residuesp588-619ByJuliana M. PradoJuliana M. PradoCentro de Ciências da Natureza (CCN), Federal University of São Carlos (UFSCar)Rod. Lauri Simões de Barros, km 12, SP-18918290-000BuriSPBrazil[email protected]Search for other works by this author on:
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CHAPTER 21: Applications of Fluids at Supercritical Pressure in the Area of Power Generation – Movements Towards Economically-viable Clean Energyp620-666ByJ. D. JacksonJ. D. JacksonSearch for other works by this author on:
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